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◆ American journal of pharmaceutical education2026-09-04

Student Performance and Instructional Complexity Across Team-Based and Mastery Learning Course Formats.

Adam M Persky, Zachary R Noel, Jacqueline E McLaughlin

一句话结论

Both TBL and ML were associated with high cumulative final examination performance despite substantial differences in instructional organization and operational demands. Selection of an instructional model should depend on alignment among learning goals, institutional resources, and implementation context rather than small differences in examination outcomes.

原始摘要(原文)
OBJECTIVE: To compare cumulative final examination performance between mastery learning (ML) and team-based learning (TBL) and conduct an exploratory characterization of differences in instructional complexity between the two models. METHODS: This retrospective study compared seven years of student performance data from a TBL course format (2012-2018, n=996) with seven years following implementation of ML (2019-2025, n=1,078). Course content, sequencing, learning objectives, and cumulative examination blueprint remained relatively stable across years. The primary outcome was student performance on a cumulative final examination. Final examination scores were compared between instructional models using Welch's independent samples t-test. Effect sizes were calculated using Cohen's d. An exploratory retrospective analysis used instructor-informed ratings to characterize relative instructional complexity between formats. RESULTS: Students in the ML format achieved statistically significantly higher examination scores compared with students in the TBL format (ML=90.0%, TBL=88.0%, mean difference=2.0 percentage points, p<.001, d=0.24). Results remained consistent when COVID-affected cohorts were excluded from analysis. ML was also associated with lower score variability (SD=7.9 vs 8.9), suggesting greater consistency in student performance. The exploratory instructor-informed complexity analysis suggested that TBL concentrated relative instructional complexity within synchronous classroom coordination and team management, whereas ML concentrated complexity within assessment infrastructure, reassessment processes, and individualized learner support. CONCLUSION: Both TBL and ML were associated with high cumulative final examination performance despite substantial differences in instructional organization and operational demands. Selection of an instructional model should depend on alignment among learning goals, institutional resources, and implementation context rather than small differences in examination outcomes.
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Student Performance and Instructional Complexity Across Team-Based and Mastery Learning Course Formats. — 科研速览 Science Skim